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立方Dy3+中心在 AgCl 晶体中的自旋哈密顿参数和缺陷结构。

Spin-Hamiltonian parameters and defect structure for the rhombic Dy3+ center in AgCl crystal.

机构信息

Department of Material Science, Sichuan University, Chengdu 610064, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2011 Jan;78(1):343-6. doi: 10.1016/j.saa.2010.10.018. Epub 2010 Oct 26.

Abstract

Based on the defect model that the rhombic Dy(3+) center in AgCl crystal is formed by substitutional Dy3+ ion associated with two nearest Ag+ vacancies (VAg) along the <110> and <110> axes owing to charge compensation, the spin-Hamiltonian parameters (g factors gi and hyperfine structure constants 161Ai and 163Ai, where i=x, y, z) of this rhombic Dy3+ center are calculated from a diagonalization (of energy matrix) method. In the method, the Zeeman (or magnetic) and hyperfine interaction terms are attached to the classical Hamiltonian used in the calculation of crystal-field energy levels and a 66×66 energy matrix concerning this Hamiltonian is constructed by taking all the ground-term multiplets 6HJ (J=15/2, 13/2, 11/2, 9/2, 7/2, 5/2) into account. The calculated results (g factors gi and average |A(161Dy3+)| and |A(163Dy3+)|) are in reasonable agreement with the experimental values. From the calculations, the above defect model of rhombic Dy3+ center is confirmed, the defect structure of this Dy3+ center (characterized by the displacement of Cl- ligand caused by VAg) is obtained and the components of hyperfine structure constants Ai(161Dy3+) and Ai(163Dy3+) are predicted. The results are discussed.

摘要

基于菱形 Dy(3+) 中心在 AgCl 晶体中是由取代 Dy3+ 离子与沿 <110> 和 <110> 轴的两个最近的 Ag+ 空位 (VAg) 形成的缺陷模型,由于电荷补偿,该菱形 Dy3+ 中心的自旋哈密顿参数(g 因子 gi 和超精细结构常数 161Ai 和 163Ai,其中 i=x,y,z)是通过对角化(能量矩阵)方法计算的。在该方法中,塞曼(或磁场)和超精细相互作用项被附加到用于计算晶体场能级的经典哈密顿量上,并且通过考虑所有基态多重态 6HJ(J=15/2,13/2,11/2,9/2,7/2,5/2),构建了一个 66×66 的能量矩阵。计算结果(g 因子 gi 和平均 |A(161Dy3+)| 和 |A(163Dy3+)|)与实验值吻合较好。从计算结果中,证实了上述菱形 Dy3+ 中心的缺陷模型,获得了该 Dy3+ 中心的缺陷结构(由 VAg 引起的 Cl-配体的位移所特征化),并预测了超精细结构常数 Ai(161Dy3+)和 Ai(163Dy3+)的分量。对结果进行了讨论。

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